energy storage

PowerFac-5M 5.016 MWh Liquid-Cooled Containerized BESS

A 5,016 kWh liquid-cooled DC-side battery platform for utility-scale renewable, grid-support, and large microgrid projects.

  • 5,016 kWh nominal energy
  • Liquid-cooled thermal management
  • Twelve 418 kWh battery clusters
  • Containerized DC-side architecture
Nominal energy
5,016 kWh
Nominal DC voltage
1331.2 V
DC operating voltage
1164.8–1497.6 V
Battery cluster energy
418 kWh
PowerFac-5M 5.016 MWh Liquid-Cooled Containerized BESS

Product overview

PowerFac-5M combines twelve 418 kWh battery clusters in a containerized DC-side architecture. PCS, transformer, EMS, protection, civil works, grid interface, and commissioning scope are configured for each project.

Configuration note: nameplate values help define the starting point. Final usable energy, interfaces, operating limits, document scope, and commercial terms are confirmed for the specific project.

5,016 kWh nominal energy

Review this attribute together with the complete system, destination requirements, and operating conditions.

Liquid-cooled thermal management

Review this attribute together with the complete system, destination requirements, and operating conditions.

Twelve 418 kWh battery clusters

Review this attribute together with the complete system, destination requirements, and operating conditions.

Containerized DC-side architecture

Review this attribute together with the complete system, destination requirements, and operating conditions.

Key specifications

PowerFac-5M 5.016 MWh Liquid-Cooled Containerized BESS — published technical data
ParameterValueCondition or note
Nominal energy5,016 kWhConfirm final operating conditions in the project proposal.
Nominal DC voltage1331.2 VConfirm final operating conditions in the project proposal.
DC operating voltage1164.8–1497.6 VConfirm final operating conditions in the project proposal.
Battery cluster energy418 kWhConfirm final operating conditions in the project proposal.
Battery cluster quantity12Confirm final operating conditions in the project proposal.
Charge/discharge rate≤0.5PConfirm final operating conditions in the project proposal.
Thermal managementLiquid coolingConfirm final operating conditions in the project proposal.
Enclosure ratingIP55Battery packs are stated as IP65; the liquid-cooling module is excluded from the container IP rating.
Operating temperature−20 to 50 °CConfirm final operating conditions in the project proposal.
Dimensions6058 × 2438 × 2896 mmConfirm final operating conditions in the project proposal.
Approximate mass43 tConfirm final operating conditions in the project proposal.

Applications to evaluate

Renewable generation and energy shifting

Validate the duty cycle, site, interfaces, and operating objective before confirming model suitability.

Grid-side peak regulation and voltage support

Validate the duty cycle, site, interfaces, and operating objective before confirming model suitability.

Large commercial, industrial, and microgrid projects

Validate the duty cycle, site, interfaces, and operating objective before confirming model suitability.

Selection and engineering notes

  1. Define the target power, duration, dispatch profile, and usable-energy window from project data.
  2. Confirm PCS, transformer, switchgear, EMS, SCADA, communications, and protection boundaries in the proposal.
  3. Complete site-specific civil, access, fire, acoustic, environmental, and grid studies before procurement.

Frequently asked questions

What buyers ask before specifying a battery system

Answers cover the information needed to confirm configuration, operating conditions, documentation, price, and delivery.

What information is needed to size a battery energy storage system?
Provide the load profile, target power and energy duration, grid or generator constraints, installation environment, operating temperature range, and the functions the system must perform. A single capacity figure is not enough for responsible system selection.
Is nameplate energy the same as usable energy?
Not necessarily. Usable energy depends on the permitted state-of-charge window, operating conditions, conversion losses, control strategy, and project limits. Ask for both nominal and usable values in the final proposal.
What safety information should a BESS proposal include?
A project proposal should identify the cell chemistry, electrical protection, BMS architecture, thermal management, enclosure rating, fire strategy, emergency isolation, monitoring, installation limits, and the standards required by the destination project.
Which certifications are available?
Certification scope varies by model and destination. Request the current certificate and test-report package for the exact quoted model; legacy or expired certificates are not presented as current product credentials.
Why are prices not published on the product pages?
The listed products are project-configured B2B systems or battery series. Pricing depends on configuration, quantity, accessories, packaging, destination, and commercial terms, so the website does not publish placeholder or zero-value prices.
What is the production and delivery lead time?
Lead time is confirmed only after the configuration, quantity, compliance documents, packaging, and destination are known. No fixed lead-time promise is made on this website because these inputs materially change the schedule.

Discuss the PowerFac-5M

The inquiry keeps this product context attached, so the receiving team can see which specifications and application triggered the request.